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首页> 外文期刊>Journal of Materials Engineering and Performance >Growth Behavior of Oxide -Forming on a Sputtered Oxygen-Enriched Type 304 Stainless Steel
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Growth Behavior of Oxide -Forming on a Sputtered Oxygen-Enriched Type 304 Stainless Steel

机译:氧化物富含氧化型304不锈钢氧化物 - 氧化物的生长行为

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摘要

Type 304 stainless steel was deposited with and without added oxygen and then oxidized at 900 deg C in 0.1 atm oxygen. The oxidation rate of the oxygen-enriched steel was lower than that of the steel without added oxygen, and the oxide adhesion was better. Line scans on cross-sectioned scale on the oxygen-enriched steel showed that inward oxygen diffusion had occurred; however, this was not shown by any of the line scans on the steel without added oxygen. The diffusion rate of cations through chromia scale was reduced by the oxygen enrichment. A secondary ion mass microscopy study showed that sulfur segregation to the oxide scale occurred during oxidation. The extent of this segregation for the oxygen-enriched steel was much lower than that for the steel without added oxygen. The results are explained in terms of the sulfur effect theory by postulating that impurity sulfur segregated to oxide particles in the oxygen-enriched steel, resulting in a reduced sulfur level in the scale and at the oxide/metal interface.
机译:型304型不锈钢沉积,无需添加氧,然后在0.1 atm氧中以900℃氧化。富氧钢的氧化速率低于钢的氧化物而无需加入氧气,氧化物粘附更好。富含氧钢上的横截面刻度的线扫描表明,发生了内向氧气扩散;然而,这不是钢上的任何线路扫描而无需添加氧气。氧气富集降低了阳离子通过染色级的扩散速率。二次离子质量显微镜研究表明,在氧化过程中发生硫偏析。富氧钢的这种偏析的程度远低于钢的偏差,而无需添加氧气。通过将富含氧颗粒中的氧化硫在富氧钢中的氧化硫含量分配来说,在硫效应理论中解释了结果,导致氧化物/金属界面中的硫水平降低。

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